Growth and physiological responses of submerged plantVallisneria natansto water column ammonia nitrogen and sediment copper

Author:

Zhu Zhengjie12,Song Siyuan12,Li Pengshan12,Jeelani Nasreen12,Wang Penghe12,Yuan Hezhong23,Zhang Jinghan2,An Shuqing12,Leng Xin12

Affiliation:

1. School of Life Science and Institute of Wetland Ecology, Nanjing University, Nanjing Jiangsu, PR China

2. Nanjing University Ecology Research Institute of Changshu, Changshu Jiangsu, PR China

3. School of Environmental Science and Engineering, Nanjing University of Information Science and Technology, Nanjing Jiangsu, PR China

Abstract

Background.The decline of submerged plant populations due to high heavy metal (e.g., Cu) levels in sediments and ammonia nitrogen (ammonia-N) accumulation in the freshwater column has become a significant global problem. Previous studies have evaluated the effect of ammonia-N on submerged macrophytes, but few have focused on the influence of sediment Cu on submerged macrophytes and their combined effects.Methods.In this paper, we selected three levels of ammonia-N (0, 3, and 6 mg L−1) and sediment Cu (25.75 ± 6.02 as the control, 125.75 ± 6.02, and 225.75 ± 6.02 mg kg−1), to investigate the influence of sediment Cu and ammonia-N on submergedVallisneria natans. We measured the relative growth rate (RGR), above- and below- ground biomass, chlorophyll, non-protein thiol (NP-SH), and free proline.Results and Discussion.The below-ground biomass ofV. natansdecreased with increasing Cu sediment levels, suggesting that excessive sediment Cu can result in significant damage to the root ofV. natans. Similarly, the above-ground biomass significantly decreased with increasing ammonia-N concentrations, indicating that excessive water ammonia-N can cause significant toxicity to the leaf ofV. natans. In addition, high ammonia-N levels place a greater stress on submerged plants than sediment Cu, which is indicated by the decline of RGR and chlorophyll, and the increase of (NP-SH) and free proline. Furthermore, high sediment Cu causes ammonia-N to impose greater injury on submerged plants, and higher sediment Cu levels ($\mathrm{Cu}\geq 125.75$ mg kg−1) led to the tolerant values of ammonia-N forV. natansdecreasing from 6 to 3 mg L−1. This study suggests that high sediment Cu restricts the growth of plants and intensifies ammonia-N damage toV. natans.

Funder

Major Science and Technology Program for Water Pollution Control and Treatment

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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